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This study investigates the ablation behavior of (Hf-Ta-Zr-Nb)C high entropy carbide (HEC4) at temperatures exceeding 2100 °C, revealing that the mass ablation rate increases with time and that HEC4 exhibits unique resistance to mechanical scouring. The formation of a protective oxide layer during ablation contributes to mass gain and thickness increase, contrasting with typical mass loss observed in other carbides. The findings provide insights into the ablation mechanisms and the role of different metals
- Author
- fan zhou
- Language
- EN